首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >A single-layer flat-coil-oscillator (SFCO)-based super-broadband position sensor for nano-scale-resolution seismometry
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A single-layer flat-coil-oscillator (SFCO)-based super-broadband position sensor for nano-scale-resolution seismometry

机译:基于单层扁平线圈振荡器(SFCO)的超宽带位置传感器,用于纳米级分辨率地震法

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A new class super-broadband, nano-scale-resolution position sensor is tested. It is used as an additional sensor in seismograph. It enables to extend the band and enhance the sensitivity of the available technique by at least an order of magnitude. It allows transferring of mechanical vibrations of constructions and buildings, with amplitudes over 1 nm, into detectable signal in a frequency range starting practically from quasi-static movements. It is based on detection of position changes of a vibrating normal-metallic plate placed near the flat coil-being used as a pick-up in a stable tunnel diode oscillator. Frequency of the oscillator is used as a detecting parameter, and the measuring effect is determined by a distortion of the MHz-range testing field configuration near a coil by a vibrating plate, leading to magnetic inductance changes of the coil, with a resolution ~10pH. This results in changes of oscillator frequency. We discuss test data of such a position sensor, installed in a Russian SM-3 seismometer, as an additional pick-up component, showing its advantages compared to traditional techniques. We also discuss the future of such a novel sensor involving substitution of a metallic coil by a superconductive one and replacement of a tunnel diode by an S/I/S hetero-structure-as much less-powered active element in the oscillator, compared to tunnel diode. These may strongly improve the stability of oscillators, and therefore enhance the resolution of seismic techniques.
机译:测试了一种新型的超宽带,纳米级分辨率的位置传感器。它在地震仪中用作附加传感器。它可以扩展频带并至少将现有技术的灵敏度提高一个数量级。它允许将振幅超过1 nm的建筑物和建筑物的机械振动转换成实际上是从准静态运动开始的频率范围内的可检测信号。它基于检测放置在扁平线圈附近的振动法向金属板的位置变化,该线圈在稳定的隧道二极管振荡器中用作拾波器。振荡器的频率作为检测参数,其测量效果取决于振动板在线圈附近对MHz范围测试场结构的扭曲,从而导致线圈的磁感应变化,分辨率约为10pH。 。这导致振荡器频率的改变。我们讨论了这种位置传感器的测试数据,该传感器安装在俄罗斯SM-3地震仪中,作为附加的拾取组件,显示了与传统技术相比的优势。我们还将讨论这种新型传感器的未来,该传感器涉及用超导金属线圈代替金属线圈,并用S / I / S异质结构替换隧道二极管,与之相比,振荡器中有源元件的功耗要低得多。隧道二极管。这些可以大大提高振荡器的稳定性,从而提高地震技术的分辨率。

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